Fossil plants, Vol. 2 : $b A text-book for students of botany and geologySeward, A. C. (Albert Charles)
Science
Fossil plants, Vol. 2 : $b A text-book for students of botany and geology
Seward, A. C. (Albert Charles)
Paleobotany
Ferns are admirably adapted to rapid dispersal over comparatively wide
areas. Bower[723] estimates that in one season a Male Fern may produce
about 5,000,000 spores: with this enormous spore-output are coupled a
thoroughly efficient mechanism for scattering the germs and an unusual
facility for wind-dispersal. When Treub[724] visited the devastated
and sterilised wreck of the Island of Krakatau in 1886, three years
after the volcanic outburst, he found that twelve ferns had already
established themselves; the spores had probably been carried by the
wind at least 25 to 30 miles. It is not surprising, therefore, to find
that many ferns have an almost world-wide distribution; and, it may
be added, in view of their efficient means of dispersal, wide range
by no means implies great antiquity. Prof. Campbell[725] has recently
called attention to the significance of the wide distribution of
Hepaticae in its bearing on their antiquity; the spores are incapable
of retaining vitality for more than a short period, and it is argued
that a world-wide distribution can have been acquired only after an
enormous lapse of time. If we apply this reasoning to the Osmundaceae
among ferns, it may be legitimate to assume that their short-lived
green spores render them much less efficient colonisers than the
great majority of ferns; if this is granted, the wide distribution of
Osmundaceous ferns in the Mesozoic era carries their history back to a
still more remote past, a conclusion which receives support from the
records of the rocks.
The Bracken fern which we regard as characteristically British is a
cosmopolitan type; it was found by Treub among the pioneers of the New
Flora of Krakatau; in British Central Africa, it greets one at every
turn “like a messenger from the homeland[726]”; it grows on the Swiss
Alps, on the mountains of Abyssinia, in Tasmania, and on the slopes
of the Himalayas. The two genera _Matonia_ (fig. 228) and _Dipteris_,
which grow side by side on Mount Ophir in the Malay Peninsula, are
examples of restricted geographical range and carry us back to the
Jurassic period when closely allied types flourished abundantly in
northern latitudes. Similarly _Thyrsopteris elegans_, confined to Juan
Fernandez, exhibits a remarkable likeness to Jurassic species from
England and the Arctic regions.
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